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Moriya-Ito, K.

Publications and source records attributed to Moriya-Ito, K..

2 recordsLinked to original sources

Most early-born subplate neurons persist as Layer 6b neurons in the adult mouse neocortex

Subplate neurons (SpNs) are among the earliest-born neurons in the mammalian neocortex and play key roles in radial migration and transient circuit formation. It has long been assumed that most SpNs undergo extensive postnatal cell death, leaving only a small remnant population that contributes to layer 6b (L6b) in adulthood. However, the extent to which SpNs actually persist as L6b neurons has remained unresolved, partly because previous studies lacked quantitative, whole-cortex analyses that account for postnatal cortical expansion. Here, we performed a comprehensive birthdating analysis using multiple EdU injections spanning the entire neurogenic window of SpNs in mice, combined with whole-neocortex 3D tissue clearing to measure subplate and L6b volumes. This approach allowed us to directly estimate the total number and distribution of SpN-derived neurons in adulthood. We found that most early-born SpNs persist as L6b neurons, and that the apparent postnatal reduction in SpN density reflects tangential cortical expansion rather than neuronal loss. Moreover, surviving SpNs comprise diverse neuronal subtypes reminiscent of those present at early postnatal stages. Together, these findings demonstrate that, in rodents, the majority of adult L6b neurons originate from SpNs, revising the long-held view that the subplate is a largely transient neuronal population.

neuroscience↗

Infant attachment behaviors reflect the parenting style of individual caregiver in common marmosets

Childrens physical, cognitive, and emotional maturation require adequate interactions and secure attachment with their primary caregivers. However, the causal relationships between parenting components and infant attachment behaviors remain unclear. New World monkey common marmosets provide an ideal model of human parent-infant relations because, like humans, infant attachment is shared among family caregivers, including parents and older siblings using intricate vocal communications. Combining the natural variations in parenting styles and subsecond-scale microanalyses of dyadic vocal and physical interactions, we demonstrate that marmoset infants signal their need by context-dependent call use and selectively maintain proximity with familiar caregivers. The infant attachment behaviors are individually tuned according to the caregivers parenting style; infants keep producing isolation calls when they are carried by rejecting caregivers and exhibit avoidance toward neglectful and rejecting caregivers. Family-deprived infants failed to develop such adaptive uses of attachment behaviors or age-appropriate autonomy and exhibited disorganized attachment behaviors. Thus, marmoset infants shape their ability to modulate their intricate attachment system depending on the caregivers attitude through early social interactions with their family caregivers. Demonstrating the significant similarity of the infant attachment system between marmosets and humans, these findings will pave a path to elucidating the neural mechanisms of the infant attachment system.

animal behavior and cognition↗